Double-Drum Test Bench for Variable Load Transfer Simulation by Electromechanical Inertia Compensation

Author:

Xing Zhichao,Wang Guoye,Gong Zhangpeng,Zhang Shudong,Xu Dongxin,Peng Sijie

Abstract

To improve the accuracy and actual road equivalence of vehicle performance testing using test benches, a double-drum test bench that meets the test requirements of vehicle control system prototypes and in-use vehicles was designed. Dynamic models of the single-wheel test bench and the vehicle test bench were established, and mechanisms were theoretically analyzed for single-wheel variable adhesion and vehicle load transfer for equivalent testing using the variable placement angle. The mechanism of electromechanical inertia compensation was studied to realize stepless simulation of vehicle inertia and simulate dynamic load while braking. The simulation model of the vehicle test bench system was established based on MATLAB/Simulink. Simulations were carried out to verify the anti-lock braking system (ABS) performance test functionality of the test bench under high adhesion, bisectional, and low adhesion conditions. Referring to the simulation conditions, ABS tests under actual test bench and road conditions were carried out. Results demonstrated that the mechanism of variable load transfer simulation by electromechanical inertia compensation improves the equivalent accuracy compared to that of its road test equivalent, verifying the feasibility of the simulation mechanism. This study could help further improve the accuracy and reduce the cost of vehicle performance testing, thus greatly benefitting the vehicle development and testing industry.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference37 articles.

1. Model-Based Fault Diagnosis of an Anti-Lock Braking System via Structural Analysis

2. Prediction of antilock braking system condition with the vehicle stationary using a model-based approach

3. Development of a Low-cost Hardware-in-the-loop Simulation System as a Test Bench for Anti-lock Braking System

4. Design and HIL validation of Fuzzy self-optimizing control for pneumatic ABS;Wu;Automot. Eng.,2010

5. A research on the control algorithm and its HIL simulation of automotive ASR systems;Wang;Automot. Eng.,2009

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